首页> 外文期刊>International Journal of Applied Engineering Research >Comparative study of Parametric Optimization of the End Milling of Al2024-SiC MMC on Surface Roughness using Taguchi Technique with Applied Statistical Plots
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Comparative study of Parametric Optimization of the End Milling of Al2024-SiC MMC on Surface Roughness using Taguchi Technique with Applied Statistical Plots

机译:应用统计绘图综合图

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摘要

In today's competitive world, the industries should have production systems which are capable of versatility, high production rate, precision and ability to produce highly finished goods. Due to this the value of input machining parameters responsible for the desired surface finish & material removal rate becomes critical. Present paper presents a study on parametric optimization of the End Milling machining of Al2024-SiC metal matrix composite on quality characteristics namely surface roughness and material removal rate using Taguchi Technique. The end milling parameters selected is speed, feed, depth of cut and number of flutes. How these parameters influence the response outputs like MRR and surface roughness is analysed with the help of Taguchi Technique and ANOVA. At the same time various statistical plots are generated with the help of MiniTab software like residual plots, contour plots and surface plots. Twenty seven experimental runs based on design of experiments and L27 orthogonal array of Taguchi method are performed and data so obtained is used to subsequently applied to determine an optimal end milling parameter combination. Finally, confirmation tests carried out at optimum cutting conditions to make a comparison between the experimental results and developed model. The predicted results are found to be closer to experimental results by confirmation test. After this the results of Taguchi optimization are compared with the statistical plots found to be in close conformity with each other.
机译:在今天的竞争世界中,该行业应具有能够具有多功能性,高生产率,精度和生产高度成品的生产系统的生产系统。由于这一点,负责所需表面光洁度和材料去除率的输入加工参数的值变得至关重要。本文介绍了AL2024-SIC金属基质复合材料对质量特征的最终研磨加工参数化的研究,即使用TAGUCHI技术的表面粗糙度和材料去除率。选择的最终铣削参数是速度,饲料,切割深度和长笛的数量。在Taguchi技术和Anova的帮助下,分析了这些参数如何影响MRR和表面粗糙度等响应输出。同时,在Minitab软件等剩余地图,轮廓图和表面图的帮助下产生各种统计图。执行基于实验设计的二十七次实验运行,并且执行了TAGUCHI方法的L27正交阵列,并且使用如此获得的数据用于随后施加以确定最佳结束铣削参数组合。最后,在最佳切削条件下进行了确认测试,以进行实验结果和开发模型之间的比较。发现预测结果通过确认测试更接近实验结果。在此之后,将Taguchi优化的结果与发现彼此紧密符合的统计图进行比较。

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